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Wear Behavior of Cooling Slope Rheocast A356 Al Alloy

机译:冷却斜面流变A356铝合金的磨损行为

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In the present study, the dry sliding wear behavior of rheocast A356 Al alloys, cast using a cooling slope, as well as gravity cast A356 Al alloy have been investigated at a low sliding speed of 1ms(-1), against a hardened EN 31 disk at different loads. The wear mechanism involves microcutting-abrasion and adhesion at lower load for all of the alloys studied in the present work. On the other hand, at higher load, mainly adhesive wear along with oxide formation is observed for gravity cast A356 Al alloy and rheocast A356 Al alloy, cast using a 45 degrees slope angle. Unlike other alloys, 60 degrees slope rheocast A356 Al alloy is found to undergo mainly abrasive wear at higher load. Accordingly, the rheocast sample, cast using a 60 degrees cooling slope, exhibits a remarkably lower wear rate at higher load compared to gravity cast and 45 degrees slope rheocast samples. This is attributed to the dominance of abrasive wear at higher load in the case of rheocast A356 Al alloy cast using a 60 degrees slope. The presence of finer and more spherical primary Al grain morphology is found to resist adhesive wear in case of 60 degrees cooling slope processed rheocast alloy and thereby delay the transition of the wear regime from normal wear to severe wear.
机译:在本研究中,针对硬化的EN 31,研究了在1ms(-1)的低滑动速度下使用冷却坡度铸造的流延A356铝合金以及重力铸造的A356铝合金的干滑动磨损行为。磁盘在不同的负载。对于本工作中研究的所有合金,其磨损机理都涉及较低负荷下的微切削磨损和粘附。另一方面,在较高的负载下,使用45度倾斜角铸造的重力铸造A356铝合金和流变铸造A356铝合金主要观察到粘合剂磨损以及氧化物的形成。与其他合金不同,发现60度斜面流变A356铝合金在较高载荷下主要经受磨料磨损。因此,与重力浇铸和45度坡度的流延铸件相比,使用60度冷却斜率浇铸的流变浇铸样品在较高的载荷下表现出明显更低的磨损率。这是由于在使用60度斜度铸造的流变A356铝合金的情况下,较高载荷下的磨料磨损占优势。发现在60度冷却斜率加工的流变合金的情况下,存在更细,更球形的原始Al晶粒形态可以抵抗粘合剂磨损,从而延迟了从正常磨损到严重磨损的过渡。

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